Viscoelastic Modeling of Responses in the Whole Compaction Process for Woven Fiber Reinforcements

IF 2.9 3区 工程技术 Q2 MECHANICS
Kai Wei, Yanke Wang, Xujing Yang
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引用次数: 1

Abstract

Compaction and the corresponding viscoelastic behaviors of woven fiber reinforcements are essential to determine the mechanical properties of composite components. Current reported works separately studied the viscoelastic behaviors in partial stage of the compaction process. In contrast, here, we propose a uniform viscoelastic model that can describe the viscoelastic responses in all stages. Systematical experiments of carbon and glass woven fiber reinforcements demonstrate the effectiveness of this viscoelastic model. Moreover, the significances of the model parameters and their underlying relations are clearly revealed. The time constants are not equal in different stages due to different roles of fiber friction played. The relationship among time constants in different stages is found and is experimentally demonstrated. Stress constants strongly depend on the initial stress and types of fiber reinforcements. The relationships between stress constants in all stages are also obtained. The proposed theor...
编织纤维增强材料全压实过程响应的粘弹性建模
织物增强纤维的压实及相应的粘弹性行为是决定复合材料力学性能的关键。现有文献分别研究了压实过程局部阶段的粘弹性行为。与此相反,我们提出了一个统一的粘弹性模型,可以描述粘弹性在所有阶段的响应。对碳纤维和玻璃纤维增强材料进行了系统的实验,验证了该粘弹性模型的有效性。此外,还清楚地揭示了模型参数及其潜在关系的意义。由于纤维摩擦所起的作用不同,不同阶段的时间常数不相等。发现了不同阶段时间常数之间的关系,并进行了实验证明。应力常数在很大程度上取决于初始应力和纤维增强材料的类型。得到了各阶段应力常数之间的关系。提出的理论……
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来源期刊
CiteScore
5.80
自引率
11.40%
发文量
116
审稿时长
3 months
期刊介绍: The journal has as its objective the publication and wide electronic dissemination of innovative and consequential research in applied mechanics. IJAM welcomes high-quality original research papers in all aspects of applied mechanics from contributors throughout the world. The journal aims to promote the international exchange of new knowledge and recent development information in all aspects of applied mechanics. In addition to covering the classical branches of applied mechanics, namely solid mechanics, fluid mechanics, thermodynamics, and material science, the journal also encourages contributions from newly emerging areas such as biomechanics, electromechanics, the mechanical behavior of advanced materials, nanomechanics, and many other inter-disciplinary research areas in which the concepts of applied mechanics are extensively applied and developed.
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